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Published on: April 17, 2019
Specificity and sensitivity of ⁹⁹mTc-EDDA/HYNIC-Tyr³-octreotide (⁹⁹mTc-TOC) for imaging neuroendocrine tumors
Jesús Sepúlveda-Méndez1, Consuelo Arteaga de Murphy, Martha Pedraza-López
1Departamento de Medicina Nuclear, Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán, Delegación Tlalpan, México DF, México.
Objectives:
Gastroenteropancreatic neuroendocrine tumors (NETs) are cancers originating from neuroendocrine organs such as the pancreas, pituitary, thyroid, and adrenal glands and tumors arising from the diffuse neuroendocrine cells that are widely distributed throughout the body. NETs express somatostatin (SS) and contain a high density of SS receptors; therefore, they can be specifically targeted with SS-based radiopharmaceuticals. The aim of this research was to determine the validity in terms of specificity, sensitivity, and the agreement beyond chance with the biopsy (gold standard) of the ⁹⁹mTc-EDDA-HYNIC-Tyr³octreotide (⁹⁹mTc-TOC) to image and localize NETs and their metastases.
Materials And Methods:
Freeze-dried kits containing 0.0125 mg HYNIC-octreotide and co-ligands were easily labeled and quality controlled within the hospital radiopharmacy. Fifty-six consecutive Mexican patients with a previous presumptive diagnosis of NETs underwent several clinical and laboratory studies and were referred to the Nuclear Medicine Department for a routine scan with ⁹⁹mTc-TOC. The patients were injected with 500-600 MBq ⁹⁹mTc-TOC, and whole-body images were obtained 2 h later with a SPECT or a SPECT/CT camera. Two nuclear medicine physicians observed the images and classified them as 17 negative and 39 positive. After correlating the image of each patient with our 'gold standard' (biopsy, clinical history, morphological images, and tumor marker assays), the ⁹⁹mTc-TOC images were classified by the same two physicians as 12 true negatives, five false negatives, 38 true positives and one false positive.
Results:
The validity of ⁹⁹mTc-TOC in terms of relative frequencies with corresponding 95% confidence intervals were as follows: 92.3% (64-100%) specificity; 88.4% (78-97%) sensitivity; and the agreement beyond chance was 73% (60-84%). The positive predictive value was 97.4% (87-100%); the negative predicted value was 70.6% (48-93%); the accuracy was 89.3% (89-97%); and the prevalence was 76.8% (64-87%).
Conclusion:
Because of these high values, we strongly recommend scintigraphy with the Mexican-produced ⁹⁹mTc-TOC for the localization of NETs and their metastases, and we conclude that it is a good tool for detecting neuroendocrine disease in a Mexican population.
Insights
This study validates ⁹⁹mTc-EDDA-HYNIC-Tyr³octreotide (⁹⁹mTc-TOC) for imaging neuroendocrine tumors (NETs). The radiopharmaceutical demonstrated high sensitivity and specificity, making it a valuable tool for detecting NETs and their metastases in Mexican patients.
Area of Science:
- Nuclear Medicine
- Oncology
- Radiopharmacy
Background:
- Neuroendocrine tumors (NETs) express somatostatin receptors, making them targets for somatostatin-based radiopharmaceuticals.
- Accurate imaging is crucial for localizing NETs and their metastases.
Purpose of the Study:
- To evaluate the diagnostic validity of ⁹⁹mTc-EDDA-HYNIC-Tyr³octreotide (⁹⁹mTc-TOC) for imaging and localizing NETs.
- To determine the specificity, sensitivity, and agreement with biopsy (gold standard) of ⁹⁹mTc-TOC.
Main Methods:
- Fifty-six Mexican patients with suspected NETs underwent scintigraphy using ⁹⁹mTc-TOC.
- Images were acquired using SPECT or SPECT/CT, and interpreted by nuclear medicine physicians.
- Results were correlated with biopsy, clinical history, and other diagnostic tests.
Main Results:
- ⁹⁹mTc-TOC showed high specificity (92.3%) and sensitivity (88.4%) for NET detection.
- Agreement beyond chance with biopsy was 73%.
- High positive predictive value (97.4%) and accuracy (89.3%) were observed.
Conclusions:
- ⁹⁹mTc-TOC scintigraphy is a recommended tool for localizing NETs and metastases in Mexican patients.
- The study supports the use of Mexican-produced ⁹⁹mTc-TOC for neuroendocrine disease detection.
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